Amorphous plasma sprayed coating

D. Vũ
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引用次数: 0

Abstract

The plasma spraying method has wide application in many industries, including the automotive industry, due to its diversity and efficiency. The interest in this technology is increasing as it is possible to replace expensive materials with iron-based alloys and use air instead of inert gas to activate plasma. There are a number of works that have emphasized the importance of properly selected spray parameters, but they used the plasma generation gas, which is an expensive inert gas such as argon, heli, or their gas mixture with a different ratio. The objective of this paper is to study the influence of the most specific parameters that affect the quality of the wear-resistant spray layer using Fe-based powder sprayed onto the steel substrate material. The experiment design with the ANOVA analysis helped to find out the nature of the elevation of the wear resistance under the influence of the particle velocity and the related technological parameters in the process. The research results provide an experimental formula that combines the main spray parameters with the evaluation of wear resistance in relation to the traditional material group.
非晶等离子喷涂涂层
等离子喷涂方法由于其多样性和高效性,在包括汽车工业在内的许多行业都有广泛的应用。由于有可能用铁基合金代替昂贵的材料,并使用空气代替惰性气体来激活等离子体,因此对这项技术的兴趣正在增加。有许多作品强调了正确选择喷雾参数的重要性,但他们使用的是等离子体产生气体,这是一种昂贵的惰性气体,如氩气,氦气,或它们的气体混合物以不同的比例。本文的目的是研究影响铁基粉末喷涂到钢基体材料上的耐磨喷涂层质量的最具体参数的影响。采用方差分析的实验设计有助于找出在颗粒速度和过程中相关工艺参数影响下耐磨性提升的本质。研究结果提供了一种将喷雾主要参数与传统材料组耐磨性评价相结合的实验公式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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